Glycine based modification of activated carbons for VOCs adsorption

Activated carbons (ACs) derived from coconut husk were modified by impregnating with glycine, a non-polar fatty amino acids. The effect of this modification method on the physicochemical characteristics of ACs and adsorption performance of VOC were investigated and compared with ammonia modification...

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Main Authors: Bo Hou, Yiming Zhao, Wenshou Sun, Shijian Lu, Siming Chen
Format: Article
Language:English
Published: Elsevier 2021-08-01
Series:Chemical Engineering Journal Advances
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666821121000429
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spelling doaj-7edce2da73e64646aa7c99050cdd8b0a2021-08-04T04:20:51ZengElsevierChemical Engineering Journal Advances2666-82112021-08-017100126Glycine based modification of activated carbons for VOCs adsorptionBo Hou0Yiming Zhao1Wenshou Sun2Shijian Lu3Siming Chen4Department of Environmental Science and Engineering, Qingdao University, Qingdao 266071, ChinaState Key Laboratory of Fine Chemistry, Department of Chemical Engineering, Dalian University of Technology, Dalian 116024, ChinaDepartment of Environmental Science and Engineering, Qingdao University, Qingdao 266071, ChinaSinopec Petroleum Engineering Corporation, Dongying 257026, China; Corresponding authors.Department of Environmental Science and Engineering, Qingdao University, Qingdao 266071, China; Corresponding authors.Activated carbons (ACs) derived from coconut husk were modified by impregnating with glycine, a non-polar fatty amino acids. The effect of this modification method on the physicochemical characteristics of ACs and adsorption performance of VOC were investigated and compared with ammonia modification. TEM, SEM and BET were used to identify morphology and pore structure, XPS and elemental analysis were applied to analyze surface chemistry of the tested ACs. The adsorption performance of the selected VOC of toluene was tested using a fixed-bed reactor. The results show that the breakthrough adsorption capacity of toluene over 10 wt% glycine modified AC was about 147% and 139% higher than that of the original and 5 wt% ammonia modified ACs, respectively, while the saturated adsorption capacities of glycine modified ACs were less than that of 5 wt% ammonia modified AC. Glycine can be deposited on the surface of ACs and form polypeptide chains by self-condensation, which is favorable to increase the nitrogen-containing groups and reduce the surface polarity of ACs. While ammonia modification was more beneficial to improving the specific surface area and pore volume. Therefore, ammonia/glycine composite modification technology was proposed. The improved breakthrough and saturated adsorption capacities of toluene reached 75.02 mg/g and 451.48 mg/g, respectively.http://www.sciencedirect.com/science/article/pii/S2666821121000429Activated carbonGlycine modificationVOCs adsorption
collection DOAJ
language English
format Article
sources DOAJ
author Bo Hou
Yiming Zhao
Wenshou Sun
Shijian Lu
Siming Chen
spellingShingle Bo Hou
Yiming Zhao
Wenshou Sun
Shijian Lu
Siming Chen
Glycine based modification of activated carbons for VOCs adsorption
Chemical Engineering Journal Advances
Activated carbon
Glycine modification
VOCs adsorption
author_facet Bo Hou
Yiming Zhao
Wenshou Sun
Shijian Lu
Siming Chen
author_sort Bo Hou
title Glycine based modification of activated carbons for VOCs adsorption
title_short Glycine based modification of activated carbons for VOCs adsorption
title_full Glycine based modification of activated carbons for VOCs adsorption
title_fullStr Glycine based modification of activated carbons for VOCs adsorption
title_full_unstemmed Glycine based modification of activated carbons for VOCs adsorption
title_sort glycine based modification of activated carbons for vocs adsorption
publisher Elsevier
series Chemical Engineering Journal Advances
issn 2666-8211
publishDate 2021-08-01
description Activated carbons (ACs) derived from coconut husk were modified by impregnating with glycine, a non-polar fatty amino acids. The effect of this modification method on the physicochemical characteristics of ACs and adsorption performance of VOC were investigated and compared with ammonia modification. TEM, SEM and BET were used to identify morphology and pore structure, XPS and elemental analysis were applied to analyze surface chemistry of the tested ACs. The adsorption performance of the selected VOC of toluene was tested using a fixed-bed reactor. The results show that the breakthrough adsorption capacity of toluene over 10 wt% glycine modified AC was about 147% and 139% higher than that of the original and 5 wt% ammonia modified ACs, respectively, while the saturated adsorption capacities of glycine modified ACs were less than that of 5 wt% ammonia modified AC. Glycine can be deposited on the surface of ACs and form polypeptide chains by self-condensation, which is favorable to increase the nitrogen-containing groups and reduce the surface polarity of ACs. While ammonia modification was more beneficial to improving the specific surface area and pore volume. Therefore, ammonia/glycine composite modification technology was proposed. The improved breakthrough and saturated adsorption capacities of toluene reached 75.02 mg/g and 451.48 mg/g, respectively.
topic Activated carbon
Glycine modification
VOCs adsorption
url http://www.sciencedirect.com/science/article/pii/S2666821121000429
work_keys_str_mv AT bohou glycinebasedmodificationofactivatedcarbonsforvocsadsorption
AT yimingzhao glycinebasedmodificationofactivatedcarbonsforvocsadsorption
AT wenshousun glycinebasedmodificationofactivatedcarbonsforvocsadsorption
AT shijianlu glycinebasedmodificationofactivatedcarbonsforvocsadsorption
AT simingchen glycinebasedmodificationofactivatedcarbonsforvocsadsorption
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